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MANA

MANA.energy develops high‑performance, eco‑friendly battery materials using silicon‑ and sulfur‑polymer electrodes that deliver up to five times the energy density of conventional solutions. Their patented microporous polymer encapsulation provides stability and durability, enabling flexible, high‑performance batteries for wearables and energy‑storage applications. The company also offers customizable ink‑formulations for battery manufacturers, allowing easy integration of these advanced materials into existing production lines.

Updated 15 days ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Founder details are not available yet.

Product

Problem

Conventional battery materials offer limited energy density, rigidity, and often rely on environmentally harmful components, restricting performance for wearable electronics, IoT devices, and large‑scale storage systems.

Solution

MANA.energy supplies high‑performance, eco‑friendly battery materials based on silicon and sulfur‑polymer electrodes that achieve up to five times the energy density of standard cells. Their patented microporous polymer encapsulation stabilizes the active materials, providing durability and thermal resilience for flexible form factors. The company offers customizable ink formulations that can be integrated directly into existing manufacturing lines, enabling battery producers to upgrade performance without retooling. Additionally, MANA provides ready‑to‑use electrodes and fully assembled batteries tailored to niche applications such as wearables, smart labels, and other IoT products, delivering superior capacity and mechanical flexibility while maintaining sustainability goals.

Target Audience

Primary customers are battery manufacturers and material suppliers seeking performance upgrades, as well as developers of wearable technology, IoT devices, and smart‑label solutions that require flexible, high‑energy storage.

Features

  • Silicon and sulfur‑polymer electrode chemistries delivering ~5× higher energy density than commercial alternatives
  • Patented microporous polymer encapsulation that enhances cycle life, thermal stability, and mechanical flexibility
  • Tailorable ink formulations for seamless integration into current electrode coating processes
  • Stand‑alone customizable electrodes optimized for flexible and high‑output applications
  • Fully assembled battery packs designed for wearable electronics, IoT devices, and smart labeling with superior capacity and durability
This profile is AI-generated and may contain inaccuracies.